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免疫球蛋白重链基因间控制区中的CTCF结合元件1和2协同调节V(D)J重组。

CTCF-binding elements 1 and 2 in the Igh intergenic control region cooperatively regulate V(D)J recombination.

作者信息

Lin Sherry G, Guo Chunguang, Su Arthur, Zhang Yu, Alt Frederick W

机构信息

Program in Cellular and Molecular Medicine and Department of Genetics, Harvard Medical School, Boston, MA 02115.

Program in Cellular and Molecular Medicine and.

出版信息

Proc Natl Acad Sci U S A. 2015 Feb 10;112(6):1815-20. doi: 10.1073/pnas.1424936112. Epub 2015 Jan 26.

Abstract

Ig heavy chain (IgH) variable region exons are assembled from V, D, and J gene segments during early B-lymphocyte differentiation. A several megabase region at the "distal" end of the mouse IgH locus (Igh) contains hundreds of V(H)s, separated by an intergenic region from Igh Ds, J(H)s, and constant region exons. Diverse primary Igh repertoires are generated by joining Vs, Ds, and Js in different combinations, with a given B cell productively assembling only one combination. The intergenic control region 1 (IGCR1) in the V(H)-to-D intergenic region regulates Igh V(D)J recombination in the contexts of developmental order, lineage specificity, and feedback from productive rearrangements. IGCR1 also diversifies IgH repertoires by balancing proximal and distal V(H) use. IGCR1 functions in all these regulatory contexts by suppressing predominant rearrangement of D-proximal V(H)s. Such IGCR1 functions were neutralized by simultaneous mutation of two CCCTC-binding factor (CTCF)-binding elements (CBE1 and CBE2) within it. However, it was unknown whether only one CBE mediates IGCR1 functions or whether both function in this context. To address these questions, we generated mice in which either IGCR1 CBE1 or CBE2 was replaced with scrambled sequences that do not bind CTCF. We found that inactivation of CBE1 or CBE2 individually led to only partial impairment of various IGCR1 functions relative to the far greater effects of inactivating both binding elements simultaneously, demonstrating that they function cooperatively to achieve full IGCR1 regulatory activity. Based on these and other findings, we propose an orientation-specific looping model for synergistic CBE1 and CBE2 functions.

摘要

在早期B淋巴细胞分化过程中,Ig重链(IgH)可变区外显子由V、D和J基因片段组装而成。小鼠IgH基因座(Igh)“远端”的一个几兆碱基区域包含数百个V(H)基因,与Igh D基因、J(H)基因和恒定区外显子之间被一个基因间区域隔开。通过以不同组合连接V、D和J基因,可产生多样化的初级Igh库,而给定的B细胞仅有效组装一种组合。V(H)基因与D基因之间的基因间控制区1(IGCR1)在发育顺序、谱系特异性以及有效重排的反馈背景下调节Igh V(D)J重组。IGCR1还通过平衡近端和远端V(H)基因的使用使IgH库多样化。IGCR1通过抑制D近端V(H)基因的主要重排在所有这些调节背景下起作用。IGCR1内的两个CCCTC结合因子(CTCF)结合元件(CBE1和CBE2)同时突变会使这些IGCR1功能失效。然而,尚不清楚是只有一个CBE介导IGCR1功能,还是两者在此背景下都起作用。为了解决这些问题,我们构建了将IGCR1的CBE1或CBE2替换为不与CTCF结合的随机序列的小鼠。我们发现,单独使CBE1或CBE2失活相对于同时使两个结合元件失活产生的更大影响,仅导致各种IGCR1功能的部分受损,这表明它们协同发挥作用以实现完整的IGCR1调节活性。基于这些及其他发现,我们提出了一个关于CBE1和CBE2协同功能的方向特异性环化模型。

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